1use crate::{
2 error::{ErrorClass, ErrorOrigin, InternalError},
3 value::Value,
4};
5use canic_utils::hash::Xxh3;
6
7#[repr(u8)]
21#[derive(Clone, Copy, Debug, Eq, PartialEq)]
22pub enum ValueTag {
23 Account = 1,
24 Blob = 2,
25 Bool = 3,
26 Date = 4,
27 Decimal = 5,
28 Duration = 6,
29 Enum = 7,
30 E8s = 8,
31 E18s = 9,
32 Float32 = 10,
33 Float64 = 11,
34 Int = 12,
35 Int128 = 13,
36 IntBig = 14,
37 List = 15,
38 Map = 16,
39 Null = 17,
40 Principal = 18,
41 Subaccount = 19,
42 Text = 20,
43 Timestamp = 21,
44 Uint = 22,
45 Uint128 = 23,
46 UintBig = 24,
47 Ulid = 25,
48 Unit = 26,
49}
50
51impl ValueTag {
52 #[must_use]
53 pub const fn to_u8(self) -> u8 {
54 self as u8
55 }
56}
57
58const fn value_tag(value: &Value) -> u8 {
63 match value {
64 Value::Account(_) => ValueTag::Account,
65 Value::Blob(_) => ValueTag::Blob,
66 Value::Bool(_) => ValueTag::Bool,
67 Value::Date(_) => ValueTag::Date,
68 Value::Decimal(_) => ValueTag::Decimal,
69 Value::Duration(_) => ValueTag::Duration,
70 Value::Enum(_) => ValueTag::Enum,
71 Value::E8s(_) => ValueTag::E8s,
72 Value::E18s(_) => ValueTag::E18s,
73 Value::Float32(_) => ValueTag::Float32,
74 Value::Float64(_) => ValueTag::Float64,
75 Value::Int(_) => ValueTag::Int,
76 Value::Int128(_) => ValueTag::Int128,
77 Value::IntBig(_) => ValueTag::IntBig,
78 Value::List(_) => ValueTag::List,
79 Value::Map(_) => ValueTag::Map,
80 Value::Null => ValueTag::Null,
81 Value::Principal(_) => ValueTag::Principal,
82 Value::Subaccount(_) => ValueTag::Subaccount,
83 Value::Text(_) => ValueTag::Text,
84 Value::Timestamp(_) => ValueTag::Timestamp,
85 Value::Uint(_) => ValueTag::Uint,
86 Value::Uint128(_) => ValueTag::Uint128,
87 Value::UintBig(_) => ValueTag::UintBig,
88 Value::Ulid(_) => ValueTag::Ulid,
89 Value::Unit => ValueTag::Unit,
90 }
91 .to_u8()
92}
93
94fn feed_i32(h: &mut Xxh3, x: i32) {
95 h.update(&x.to_be_bytes());
96}
97fn feed_i64(h: &mut Xxh3, x: i64) {
98 h.update(&x.to_be_bytes());
99}
100fn feed_i128(h: &mut Xxh3, x: i128) {
101 h.update(&x.to_be_bytes());
102}
103fn feed_u8(h: &mut Xxh3, x: u8) {
104 h.update(&[x]);
105}
106fn feed_u32(h: &mut Xxh3, x: u32) {
107 h.update(&x.to_be_bytes());
108}
109fn feed_u64(h: &mut Xxh3, x: u64) {
110 h.update(&x.to_be_bytes());
111}
112fn feed_u128(h: &mut Xxh3, x: u128) {
113 h.update(&x.to_be_bytes());
114}
115fn feed_bytes(h: &mut Xxh3, b: &[u8]) {
116 h.update(b);
117}
118
119#[cfg(test)]
120thread_local! {
121 static TEST_HASH_OVERRIDE: std::cell::Cell<Option<[u8; 16]>> =
122 const { std::cell::Cell::new(None) };
123}
124
125#[cfg(test)]
126#[allow(clippy::redundant_closure_for_method_calls)]
127fn test_hash_override() -> Option<[u8; 16]> {
128 TEST_HASH_OVERRIDE.with(|cell| cell.get())
129}
130
131#[allow(clippy::cast_possible_truncation)]
132#[allow(clippy::too_many_lines)]
133fn write_to_hasher(value: &Value, h: &mut Xxh3) -> Result<(), InternalError> {
134 feed_u8(h, value_tag(value));
135
136 match value {
137 Value::Account(a) => {
138 let bytes = a.to_bytes().map_err(|err| {
139 InternalError::new(
140 ErrorClass::Unsupported,
141 ErrorOrigin::Serialize,
142 err.to_string(),
143 )
144 })?;
145 feed_bytes(h, &bytes);
146 }
147 Value::Blob(v) => {
148 feed_u8(h, 0x01);
149 feed_u32(h, v.len() as u32);
150 feed_bytes(h, v);
151 }
152 Value::Bool(b) => {
153 feed_u8(h, u8::from(*b));
154 }
155 Value::Date(d) => feed_i32(h, d.get()),
156 Value::Decimal(d) => {
157 feed_u8(h, u8::from(d.is_sign_negative()));
159 feed_u32(h, d.scale());
160 feed_bytes(h, &d.mantissa().to_be_bytes());
161 }
162 Value::Duration(t) => {
163 feed_u64(h, t.get());
164 }
165 Value::Enum(v) => {
166 match &v.path {
167 Some(path) => {
168 feed_u8(h, 0x01); feed_u32(h, path.len() as u32);
170 feed_bytes(h, path.as_bytes());
171 }
172 None => feed_u8(h, 0x00), }
174
175 feed_u32(h, v.variant.len() as u32);
176 feed_bytes(h, v.variant.as_bytes());
177
178 match &v.payload {
179 Some(payload) => {
180 feed_u8(h, 0x01); write_to_hasher(payload, h)?; }
183 None => feed_u8(h, 0x00),
184 }
185 }
186 Value::E8s(v) => {
187 feed_u64(h, v.get());
188 }
189 Value::E18s(v) => {
190 feed_bytes(h, &v.to_be_bytes());
191 }
192 Value::Float32(v) => {
193 feed_bytes(h, &v.to_be_bytes());
194 }
195 Value::Float64(v) => {
196 feed_bytes(h, &v.to_be_bytes());
197 }
198 Value::Int(i) => {
199 feed_i64(h, *i);
200 }
201 Value::Int128(i) => {
202 feed_i128(h, i.get());
203 }
204 Value::IntBig(v) => {
205 let bytes = v.to_leb128();
206 feed_u32(h, bytes.len() as u32);
207 feed_bytes(h, &bytes);
208 }
209 Value::List(xs) => {
210 feed_u32(h, xs.len() as u32);
211 for x in xs {
212 feed_u8(h, 0xFF);
213 write_to_hasher(x, h)?; }
215 }
216 Value::Map(entries) => {
217 feed_u32(h, entries.len() as u32);
218 for (key, value) in entries {
219 feed_u8(h, 0xFD);
220 write_to_hasher(key, h)?;
221 feed_u8(h, 0xFE);
222 write_to_hasher(value, h)?;
223 }
224 }
225 Value::Principal(p) => {
226 let raw = p.to_bytes().map_err(|err| {
227 InternalError::new(
228 ErrorClass::Unsupported,
229 ErrorOrigin::Serialize,
230 err.to_string(),
231 )
232 })?;
233 feed_u32(h, raw.len() as u32);
234 feed_bytes(h, &raw);
235 }
236 Value::Subaccount(s) => {
237 feed_bytes(h, &s.to_bytes());
238 }
239 Value::Text(s) => {
240 feed_u32(h, s.len() as u32);
245 feed_bytes(h, s.as_bytes());
246 }
247 Value::Timestamp(t) => {
248 feed_u64(h, t.get());
249 }
250 Value::Uint(u) => {
251 feed_u64(h, *u);
252 }
253 Value::Uint128(u) => {
254 feed_u128(h, u.get());
255 }
256 Value::UintBig(v) => {
257 let bytes = v.to_leb128();
258 feed_u32(h, bytes.len() as u32);
259 feed_bytes(h, &bytes);
260 }
261 Value::Ulid(u) => {
262 feed_bytes(h, &u.to_bytes());
263 }
264 Value::Null | Value::Unit => {
265 }
267 }
268
269 Ok(())
270}
271
272pub fn hash_value(value: &Value) -> Result<[u8; 16], InternalError> {
274 const VERSION: u8 = 1;
275
276 #[cfg(test)]
277 if let Some(override_hash) = test_hash_override() {
278 return Ok(override_hash);
279 }
280
281 let mut h = Xxh3::with_seed(0);
282 feed_u8(&mut h, VERSION); write_to_hasher(value, &mut h)?;
285 Ok(h.digest128().to_be_bytes())
286}
287
288pub fn to_index_fingerprint(value: &Value) -> Result<Option<[u8; 16]>, InternalError> {
300 if matches!(value, Value::Null) {
301 return Ok(None);
303 }
304
305 Ok(Some(hash_value(value)?))
306}
307
308#[cfg(test)]
313mod tests {
314 use super::*;
315 use crate::{
316 types::{Float32 as F32, Float64 as F64},
317 value::{Value, ValueEnum},
318 };
319
320 fn v_f64(x: f64) -> Value {
321 Value::Float64(F64::try_new(x).expect("finite f64"))
322 }
323 fn v_f32(x: f32) -> Value {
324 Value::Float32(F32::try_new(x).expect("finite f32"))
325 }
326 fn v_i(x: i64) -> Value {
327 Value::Int(x)
328 }
329 fn v_txt(s: &str) -> Value {
330 Value::Text(s.to_string())
331 }
332
333 #[test]
334 fn hash_is_deterministic_for_int() {
335 let v = Value::Int(42);
336 let a = hash_value(&v).expect("hash value");
337 let b = hash_value(&v).expect("hash value");
338 assert_eq!(a, b, "hash should be deterministic for same value");
339 }
340
341 #[test]
342 fn different_variants_produce_different_hashes() {
343 let a = hash_value(&Value::Int(5)).expect("hash value");
344 let b = hash_value(&Value::Uint(5)).expect("hash value");
345 assert_ne!(
346 a, b,
347 "Int(5) and Uint(5) must hash differently (different tag)"
348 );
349 }
350
351 #[test]
352 fn enum_hash_tracks_path_presence() {
353 let strict = Value::Enum(ValueEnum::new("A", Some("MyEnum")));
354 let loose = Value::Enum(ValueEnum::new("A", None));
355 assert_ne!(
356 hash_value(&strict).expect("hash value"),
357 hash_value(&loose).expect("hash value"),
358 "Enum hashes must differ when path is present vs absent"
359 );
360 }
361
362 #[test]
363 fn enum_hash_includes_payload() {
364 let base = ValueEnum::new("A", Some("MyEnum"));
365 let with_one = Value::Enum(base.clone().with_payload(Value::Uint(1)));
366 let with_two = Value::Enum(base.with_payload(Value::Uint(2)));
367
368 assert_ne!(
369 hash_value(&with_one).expect("hash value"),
370 hash_value(&with_two).expect("hash value"),
371 "Enum payload must influence hash/fingerprint"
372 );
373 }
374
375 #[test]
376 fn float32_and_float64_hash_differ() {
377 let a = hash_value(&v_f32(1.0)).expect("hash value");
378 let b = hash_value(&v_f64(1.0)).expect("hash value");
379 assert_ne!(
380 a, b,
381 "Float32 and Float64 must hash differently (different tag)"
382 );
383 }
384
385 #[test]
386 fn text_is_length_and_content_sensitive() {
387 let a = hash_value(&v_txt("foo")).expect("hash value");
388 let b = hash_value(&v_txt("bar")).expect("hash value");
389 assert_ne!(a, b, "different strings should hash differently");
390
391 let c = hash_value(&v_txt("foo")).expect("hash value");
392 assert_eq!(a, c, "same string should hash the same");
393 }
394
395 #[test]
396 fn list_hash_is_order_sensitive() {
397 let l1 = Value::from_slice(&[v_i(1), v_i(2)]);
398 let l2 = Value::from_slice(&[v_i(2), v_i(1)]);
399 assert_ne!(
400 hash_value(&l1).expect("hash value"),
401 hash_value(&l2).expect("hash value"),
402 "list order should affect hash"
403 );
404 }
405
406 #[test]
407 fn list_hash_is_length_sensitive() {
408 let l1 = Value::from_slice(&[v_i(1)]);
409 let l2 = Value::from_slice(&[v_i(1), v_i(1)]);
410 assert_ne!(
411 hash_value(&l1).expect("hash value"),
412 hash_value(&l2).expect("hash value"),
413 "list length should affect hash"
414 );
415 }
416
417 #[test]
418 fn list_blob_boundaries_are_length_framed() {
419 let left = Value::List(vec![
420 Value::Blob(vec![0x10, 0xFF, 0x02, 0x11]),
421 Value::Blob(vec![0x12]),
422 ]);
423 let right = Value::List(vec![
424 Value::Blob(vec![0x10]),
425 Value::Blob(vec![0x11, 0xFF, 0x02, 0x12]),
426 ]);
427
428 assert_ne!(
429 hash_value(&left).expect("hash value"),
430 hash_value(&right).expect("hash value"),
431 "blob boundaries must be length-framed to avoid collisions"
432 );
433 }
434}